Literature DB >> 18358467

Bullwhip neurons in the retina regulate the size and shape of the eye.

Andy J Fischer1, Eric R Ritchey, Melissa A Scott, Angela Wynne.   

Abstract

Bullwhip and mini-bullwhip cells are unconventional types of retinal neurons that utilize the neuropeptides glucagon, glucagon-like peptide 1 (GLP1) and substance P. These cells have been implicated in regulating the proliferation of neural progenitors in the circumferential marginal zone (CMZ) of the chicken retina. The purpose of this study was to investigate the roles of the bullwhip cells in regulating ocular size and shape. We found that intravitreal delivery of colchicine at postnatal day 7 destroys the vast majority (approximately 98%) of the bullwhip and mini-bullwhip cells and their peptidergic terminals that are concentrated in the CMZ near the equator of the eye. Interestingly, colchicine-treatment resulted in excessive ocular growth that involved the expansion of equatorial diameter, but not axial length. Intraocular injections of glucagon completely prevented the equatorial expansion that occurs with colchicine-treatment. In eyes with undamaged retinas, exogenous glucagon suppressed equatorial eye growth, whereas glucagon receptor antagonists caused excessive equatorial growth. Furthermore, visual stimuli that increase or decrease rates of ocular growth caused a down- or up-regulation, respectively, of the immediate early gene Egr1 in the bullwhip cells; indicating that the activity of the bullwhip cells is regulated by growth-guiding visual cues. We found that the glucagon receptor was expressed by cells in the fibrous and cartilaginous sclera in equatorial regions of the eye. Taken together, these findings suggest that glucagon peptide released from the terminals of the bullwhip and mini-bullwhip cells regulates the growth of the equatorial sclera in a vision-dependent manner. Although the bullwhip and mini-bullwhip cells are not abundant, less than 1000 cells per retina, their influence on the development of the eye is substantial and includes vision-guided ocular growth.

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Year:  2008        PMID: 18358467     DOI: 10.1016/j.ydbio.2008.02.023

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  29 in total

1.  The pattern of expression of guanine nucleotide-binding protein beta3 in the retina is conserved across vertebrate species.

Authors:  E R Ritchey; R E Bongini; K A Code; C Zelinka; S Petersen-Jones; A J Fischer
Journal:  Neuroscience       Date:  2010-06-09       Impact factor: 3.590

2.  Muller glia, vision-guided ocular growth, retinal stem cells, and a little serendipity: the Cogan lecture.

Authors:  Andy J Fischer
Journal:  Invest Ophthalmol Vis Sci       Date:  2011-09-29       Impact factor: 4.799

3.  Activation of glucocorticoid receptors in Müller glia is protective to retinal neurons and suppresses microglial reactivity.

Authors:  Donika Gallina; Christopher Paul Zelinka; Colleen M Cebulla; Andy J Fischer
Journal:  Exp Neurol       Date:  2015-08-10       Impact factor: 5.330

4.  BMP- and TGFβ-signaling regulate the formation of Müller glia-derived progenitor cells in the avian retina.

Authors:  Levi Todd; Isabella Palazzo; Natalie Squires; Ninoshka Mendonca; Andy J Fischer
Journal:  Glia       Date:  2017-07-13       Impact factor: 7.452

5.  Vision-guided ocular growth in a mutant chicken model with diminished visual acuity.

Authors:  Eric R Ritchey; Christopher Zelinka; Junhua Tang; Jun Liu; Kimberly A Code; Simon Petersen-Jones; Andy J Fischer
Journal:  Exp Eye Res       Date:  2012-07-21       Impact factor: 3.467

Review 6.  The chick eye in vision research: An excellent model for the study of ocular disease.

Authors:  C Ellis Wisely; Javed A Sayed; Heather Tamez; Chris Zelinka; Mohamed H Abdel-Rahman; Andy J Fischer; Colleen M Cebulla
Journal:  Prog Retin Eye Res       Date:  2017-06-28       Impact factor: 21.198

7.  Reactive retinal microglia, neuronal survival, and the formation of retinal folds and detachments.

Authors:  Andy J Fischer; Christopher Zelinka; Nima Milani-Nejad
Journal:  Glia       Date:  2014-09-18       Impact factor: 7.452

8.  A novel type of glial cell in the retina is stimulated by insulin-like growth factor 1 and may exacerbate damage to neurons and Müller glia.

Authors:  Andy J Fischer; Melissa A Scott; Christopher Zelinka; Patrick Sherwood
Journal:  Glia       Date:  2010-04-15       Impact factor: 7.452

Review 9.  Temporal integration of visual signals in lens compensation (a review).

Authors:  Xiaoying Zhu
Journal:  Exp Eye Res       Date:  2013-03-05       Impact factor: 3.467

10.  Microarray analysis of retinal gene expression in Egr-1 knockout mice.

Authors:  Ruth Schippert; Frank Schaeffel; Marita Pauline Feldkaemper
Journal:  Mol Vis       Date:  2009-12-10       Impact factor: 2.367

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